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首页> 外文期刊>Plasma processes and polymers >Controlled co-immobilization of biomolecules on quinone-bearing plasma polymer films for multifunctional biomaterial surfaces
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Controlled co-immobilization of biomolecules on quinone-bearing plasma polymer films for multifunctional biomaterial surfaces

机译:用于多功能生物材料表面的醌含醌血浆聚合物薄膜对生物分子的控制共固定

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摘要

In this study, an efficient methodology, allowing the controlled co-immobilization of two complementary biomolecules, is reported for the production of multifunctional antibacterial surfaces. To promote long-lasting covalent immobilization, metallic surfaces are first coated with a quinone-bearing poly(methacrylate)-based thin film by combining an atmospheric pressure liquid-assisted plasma polymerization and a controlled sodium periodate-induced catechol oxidation steps. The influence of the oxidation step on the film morphology and chemistry is investigated using an analytical multitool approach involving atomic force microscopy, ultraviolet, infrared, and X-ray photoelectron spectroscopy techniques. Quartz crystal microbalance with dissipation monitoring (QCM-D) analyses allow the rapid determination of the optimal biomolecule immobilization conditions in terms of kinetics of grafting and biomolecule solution concentrations. In vitro functional assays combined with QCM-D analyses demonstrate promising, dual biologically active coated surfaces.
机译:在该研究中,据报道,允许允许两种互补生物分子的控制共固化的有效方法,用于生产多功能抗菌表面。为了促进长期的共价固定化,首先通过组合大气压液辅助等离子体聚合和控制的碘酸钠诱导的儿茶酚氧化步骤,首先用含醌聚(甲基丙烯酸酯)基薄膜涂覆金属表面。使用涉及原子力显微镜,紫外线,红外和X射线光电子能谱技术的分析多功能方法研究了氧化步骤对薄膜形态和化学的影响。具有耗散监测(QCM-D)分析的石英晶体微稳定允许在接枝和生物分子溶液浓度的动力学方面快速测定最佳的生物分子固定条件。体外功能测定与QCM-D分析相结合,证明了有希望的双生物活性涂覆表面。

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